Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus

A rock creep constitutive model is the core content of rock rheological mechanics theory and is of great significance for studying the long-term stability of engineering. Most of the creep models constructed in previous studies have complex types and many parameters. Based on fractional calculus the...

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Main Authors: Erjian Wei, Bin Hu, Jing Li, Kai Cui, Zhen Zhang, Aneng Cui, Liyao Ma
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2022/3063972
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author Erjian Wei
Bin Hu
Jing Li
Kai Cui
Zhen Zhang
Aneng Cui
Liyao Ma
author_facet Erjian Wei
Bin Hu
Jing Li
Kai Cui
Zhen Zhang
Aneng Cui
Liyao Ma
author_sort Erjian Wei
collection DOAJ
description A rock creep constitutive model is the core content of rock rheological mechanics theory and is of great significance for studying the long-term stability of engineering. Most of the creep models constructed in previous studies have complex types and many parameters. Based on fractional calculus theory, this paper explores the creep curve characteristics of the creep elements with the fractional order change, constructs a nonlinear viscoelastic-plastic creep model of rock based on fractional calculus, and deduces the creep constitutive equation. By using a user-defined function fitting tool of the Origin software and the Levenberg–Marquardt optimization algorithm, the creep test data are fitted and compared. The fitting curve is in good agreement with the experimental data, which shows the rationality and applicability of the proposed nonlinear viscoelastic-plastic creep model. Through sensitivity analysis of the fractional order β2 and viscoelastic coefficient ξ2, the influence of these creep parameters on rock creep is clarified. The research results show that the nonlinear viscoelastic-plastic creep model of rock based on fractional calculus constructed in this paper can well describe the creep characteristics of rock, and this model has certain theoretical significance and engineering application value for long-term engineering stability research.
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publishDate 2022-01-01
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series Advances in Civil Engineering
spelling doaj-art-7557fecbb1db4d28b04ed8f4abf5fb262025-08-20T02:07:13ZengWileyAdvances in Civil Engineering1687-80942022-01-01202210.1155/2022/3063972Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional CalculusErjian Wei0Bin Hu1Jing Li2Kai Cui3Zhen Zhang4Aneng Cui5Liyao Ma6School of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringSchool of Resources and Environmental EngineeringA rock creep constitutive model is the core content of rock rheological mechanics theory and is of great significance for studying the long-term stability of engineering. Most of the creep models constructed in previous studies have complex types and many parameters. Based on fractional calculus theory, this paper explores the creep curve characteristics of the creep elements with the fractional order change, constructs a nonlinear viscoelastic-plastic creep model of rock based on fractional calculus, and deduces the creep constitutive equation. By using a user-defined function fitting tool of the Origin software and the Levenberg–Marquardt optimization algorithm, the creep test data are fitted and compared. The fitting curve is in good agreement with the experimental data, which shows the rationality and applicability of the proposed nonlinear viscoelastic-plastic creep model. Through sensitivity analysis of the fractional order β2 and viscoelastic coefficient ξ2, the influence of these creep parameters on rock creep is clarified. The research results show that the nonlinear viscoelastic-plastic creep model of rock based on fractional calculus constructed in this paper can well describe the creep characteristics of rock, and this model has certain theoretical significance and engineering application value for long-term engineering stability research.http://dx.doi.org/10.1155/2022/3063972
spellingShingle Erjian Wei
Bin Hu
Jing Li
Kai Cui
Zhen Zhang
Aneng Cui
Liyao Ma
Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
Advances in Civil Engineering
title Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
title_full Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
title_fullStr Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
title_full_unstemmed Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
title_short Nonlinear Viscoelastic-Plastic Creep Model of Rock Based on Fractional Calculus
title_sort nonlinear viscoelastic plastic creep model of rock based on fractional calculus
url http://dx.doi.org/10.1155/2022/3063972
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